K. S. Vishvaksenan, S. Ramyaramalakshmi, S. Sathiarani
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引用次数: 0
摘要
在这篇文章中,我们评估了双空时发射分集(DSTTD)-交错多址(IDMA)系统在相关选频信道上在完美信道状态信息下的性能。DSTTD系统需要四个发射天线在基站上实现两个STBC块单元,用于下行链路通信。在我们所考虑的工作中,我们用两个双极化天线代替四个单极化发射天线,以利用正交极化实现极化分集。进一步考虑了基于空时块零化技术的非线性多用户检测,通过实现一个双极化接收天线,在减小移动单元尺寸的情况下获得更高的吞吐量。此外,我们在接收端考虑迭代式turbo译码算法,以减轻多用户干扰的影响。我们特别研究了基于Stanford University Interim (SUI)规范的turbo编码双极化DSTTD-IDMA系统的性能。我们的仿真结果表明,我们所考虑的双极化DSTTD-IDMA系统在DL通信环境下具有更好的误码率性能,并且减少了移动单元的尺寸。
Performance of DSTTD-IDMA system using polarization diversity over correlated frequency-selective channel
In this letter, we evaluate the performance of double space-time transmit diversity (DSTTD)-interleave division multiple access (IDMA) system over correlated frequency-selective channels under perfect channel state information. DSTTD system requires four transmit antennas to implement two STBC block units at the base station for down link (DL) communication. In our considered work, we replace four uni-Polarized transmit antennas by two dual polarized antennas in order to achieve polarization diversity by employing orthogonal polarization. Further we consider non linear multi-user detection based on Space-Time Block Nulling technique at each mobile station by realizing one dual polarized receive antenna to obtain higher throughput with reduced size of mobile unit. Furthermore, we consider iterative style of turbo decoding algorithm at the receiver to mitigate the effects of multi-user interferences. In particular, we investigate the performance of turbo coded dual polarized DSTTD-IDMA system based on Stanford University Interim (SUI) specifications. Our simulation results demonstrate that our considered Dual-Polarized DSTTD-IDMA system provides better BER performance with reduced size of mobile units in the context of DL communication.